OBJECTIVE: The concentration of 8-iso-prostaglandin-F2α (8-iso-PGF2α) in biological fluids has been considered as the most reliable biochemical index of the lipid peroxidation and oxidative stress in patients with several pathological conditions including end stage renal failure. However, there is no reference regarding the influence of hemodialysis (HD) on the values of 8-iso-PGF2α in the muscle Interstitial Fluid (IF) of patients with end stage renal failure. The aim of our study was to determine 8-iso-PGF2α concentration in the IF during hemodialysis and the gradient between plasma and IF in patients with end stage renal failure. DESIGN: In this study, two microdialysis probes were inserted into the vastus lateralis muscle of the right leg of six male patients with end stage renal failure who were on hemodialysis, and in six healthy males (controls). The samples of IF (12 dialysate fluids) were collected after an equilibration of 30 min: a) during the 1st hour preceding hemodialysis (group CRF0), b) during the 1st, 2nd, 3rd and 4th hour while on hemodialysis (groups CRF1, CRF8, CRF3 and CRF4) and c) during the 1st hour following hemodialysis (group CRF5). At the end of the above periods and simultaneously, blood samples were drawn from the arteriovenous fistula. In the controls, the IF samples (twelve dialysate fluids) were collected during a period of one hour and the blood samples at the end of this period. The levels of 8-iso-PGF2α were measured with an enzyme-immunoassay method. Statistical evaluation was carried out with the statistical program NCSS 2000 and the ANOVA test. RESULTS: Plasma and IF levels of 8-iso-PGF2α in the patients were significantly higher than in controls at base line. During hemodialysis, the 8-iso-PGF2α rose progressively both in plasma and IF but remained higher in plasma than in IF. CONCLUSIONS: Lipid peroxidation is higher in patients on hemodialysis than in controls but it is lower in the IF compared to plasma. The mechanism for this gradient is speculative.
Background/Aims: Increased oxidative stress in chronic kidney disease (CKD) was suggested to be both a cause and an effect of renal injury. However, the evolution of oxidant stress from early stages of renal function decline is not fully clear. This study aimed to determine the oxidant-antioxidant balance across the whole range of renal function. Methods: A total of 116 patients with CKD (85 predialysis patients divided into groups according to CKD stage, and 31 patients with end-stage renal disease (ESRD) on hemodialysis treatment), as well as 29 healthy subjects were evaluated. Plasma levels of 15-F2t-isoprostane (15-F2t-IsoP), a valid marker of oxidant stress, as well as total antioxidant capacity (TAC) and serum levels of vitamin E were measured in all participants. Results: Plasma 15-F2t-IsoP levels were higher in predialysis and ESRD patients compared to healthy subjects and were progressively increasing with advancing CKD stages (p < 0.001). In contrast, plasma TAC was similar between healthy subjects and predialysis patients, and presented a small reduction in ESRD patients (p < 0.001). Vitamin E levels were higher in healthy subjects compared to any other group (p < 0.001) and slightly higher in ESRD patients compared to predialysis patients (p < 0.01), but did not differ significantly between the groups of predialysis patients. Plasma 15-F2t-IsoP levels were inversely correlated with estimated glomerular filtration rate in predialysis patients (r = –0.65, p < 0.001). Conclusions: This study shows that 15-F2t-IsoP levels increase progressively with advancing CKD stages, whereas TAC and vitamin E levels remain rather stable with the loss of renal function and change only in patients with ESRD.
OBJECTIVE:To determine the effect of short-term weight loss in obese women on concentrations of plasma cholesteryl ester transfer protein (CETP) and phospholipid transfer protein (PLTP), two new risk factors for cardiovascular disease.RESEARCH METHODS AND PROCEDURES:Plasma CETP and PLTP mass concentrations were measured in 38 obese, non-diabetic women before and after a moderate, 4% weight loss that was obtained by a 1250 kcal/d diet for 4 weeks. Anthropometric and biological parameters were measured before and after weight loss.RESULTS:Plasma CETP concentration decreased substantially after weight loss (2.76 +/- 0.79 before and 2.31 +/- 0.69 mg/L after; p = 0.000), and the same was true for plasma PLTP concentration (9.01 +/- 2.44 mg/L before vs. 8.34 +/- 2.57 after; p = 0.043). The HDL profile shifted toward the small-sized range, with significant decreases in the relative abundance of HDL(2b) and HDL(2a) at the expense of HDL(3b) after weight loss. A significant, positive correlation between CETP and PLTP mass concentrations is reported for the first time in obese patients (r = 0.43, p = 0.004), and weight reduction was accompanied by early, concomitant, and parallel decreases in plasma CETP and PLTP levels (r = 0.47, p = 0.003). The significant relationship between CETP and PLTP levels was lost after the dietary intervention (r = 0.27; p = 0.11).DISCUSSION:CETP and PLTP correlate positively and significantly in obese patients. The hypocaloric dietary manipulation constitutes a relevant intervention to reduce rapidly and simultaneously plasma levels of CETP and PLTP. The impact of reduced PLTP activity on HDL size appeared to be more prominent than the impact of concomitant reduction in CETP activity.